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Verification of a many-ion simulator of the Dicke model through slow quenches across a phase transition

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arxiv 1807.03178 v1 pith:HTSEFZFY submitted 2018-07-06 quant-ph

Verification of a many-ion simulator of the Dicke model through slow quenches across a phase transition

classification quant-ph
keywords quantumdickemodelphasesimulatoracrossquenchesslow
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use a self-assembled two-dimensional Coulomb crystal of $\sim 70$ ions in the presence of an external transverse field to engineer a simulator of the Dicke Hamiltonian, an iconic model in quantum optics which features a quantum phase transition between a superradiant/ferromagnetic and a normal/paramagnetic phase. We experimentally implement slow quenches across the quantum critical point and benchmark the dynamics and the performance of the simulator through extensive theory-experiment comparisons which show excellent agreement. The implementation of the Dicke model in fully controllable trapped ion arrays can open a path for the generation of highly entangled states useful for enhanced metrology and the observation of scrambling and quantum chaos in a many-body system.

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